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首页> 外文期刊>Nuclear Instruments & Methods in Physics Research. Section A, Accelerators, Spectrometers, Detectors and Associated Equipment >Practical considerations for high-speed X-ray pixel array detectors and X-ray sensing materials
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Practical considerations for high-speed X-ray pixel array detectors and X-ray sensing materials

机译:高速X射线像素阵列检测器和X射线传感材料的实际考虑

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摘要

Advances in synchrotron light sources are creating new opportunities for scientific discovery by producing intense, low-emittance pulses of X-ray illumination. Detectors play a critical link in the experimental process because they are the tools of observation, charged with providing quantitative records of events that are the product of experiments. The capabilities of X-ray imaging detectors often limit the experimental possibilities, and dedicated development is needed to meet source capabilities. Currently, challenging demands on imaging detectors include hard X-ray imaging (e.g., 25 keV), high-speed imaging (e.g. matching X-ray pulse rates), and high dynamic range imaging. Pixel Array Detector (PAD) development efforts at Cornell aiming to meet these demands are described, including high atomic number (high-Z) sensor materials, single bunch imaging, high-speed continuous acquisition, and high dynamic range imaging. This paper discusses detector design considerations and development efforts at Cornell.
机译:同步加速器光源的发展通过产生强烈的低发射X射线照明脉冲,为科学发现创造了新的机会。检测器在实验过程中起着至关重要的作用,因为它们是观察工具,负责提供事件产物的定量记录,这些事件是实验的产物。 X射线成像检测器的功能通常会限制实验的可能性,因此需要专门的开发来满足放射源的功能。当前,对成像检测器的挑战性需求包括硬X射线成像(例如,> 25keV),高速成像(例如,匹配的X射线脉冲速率)以及高动态范围成像。描述了康奈尔公司旨在满足这些需求的像素阵列检测器(PAD)的开发工作,包括高原子序数(high-Z)传感器材料,单束成像,高速连续采集和高动态范围成像。本文讨论了康奈尔大学探测器设计的考虑因素和开发工作。

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